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Applications of Ethynylanilines as Substrates for Construction of Indoles and Indole-Substituted Derivatives

机译:乙烯胺作为吲哚和吲哚取代衍生物的构造的底物的应用

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摘要

Indole is a core structure in many biologically important natural products such as heteroauxin, tryptophan, hypaphorine, bufo- tenine and gramine. Further, indole based natural products attracted the attention of many research groups due to their broad range of applications in pharmaceuticals, agrochemicals. Thus, it is essential to cover recent advances in the synthesis of indoles and its derivatives. Historically, indole and its deriva- tives are synthesized by numerous approaches, which is a vast subject and beyond the scope of this review. Herein, we particularly focused on the last five years progress in synthetic approaches for the construction of indole and its derivatives from the substituted 2-ethynyl anilines using various ap- proaches such as transition-metal catalyzed cyclizations, metal- free, and radical reactions. Therefore, we believe that summa- rizing these results may be very useful for chemists who are interested in the synthesis of heterocyclic compounds.
机译:吲哚是许多在生物学上重要的天然产物中的核心结构,例如杂种,色氨酸,高phy虫,bufo- tenine和Gramine。 此外,由于吲哚基于药物,农业化学物质的广泛应用,基于吲哚的天然产品吸引了许多研究小组的注意。 因此,必须涵盖吲哚及其衍生物合成的最新进展。 从历史上看,吲哚及其衍生物是通过多种方法综合的,这是一个广泛的主题,超出了本综述的范围。 在本文中,我们尤其关注过去五年的合成方法的进展,用于使用各种APS(例如过渡金属催化的环化,无金属和自由基反应)从取代的2-乙基苯胺中构建其衍生物。 因此,我们认为,对这些结果的总结对于对合成杂环化合物感兴趣的化学家可能非常有用。

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